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In Vitro Activity of APX001A (Manogepix) and Comparator Agents against 1,706 Fungal Isolates Collected during an
M A Pfaller1,2, M D Huband3, R K Flamm1
1JMI Laboratories, North Liberty, Iowa, USA.
Abstract:
Current antifungal agents cover a majority of opportunistic fungal pathogens; however, breakthrough invasive fungal infections continue to occur and increasingly involve relatively uncommon yeasts and molds, which often exhibit decreased susceptibility. APX001A (manogepix) is a first-in-class small-molecule inhibitor of the conserved fungal Gwt1 protein. This enzyme is required for acylation of inositol during glycosylphosphatidylinositol anchor biosynthesis. APX001A is active against the major fungal pathogens, i.e., Candida (except Candida krusei), Aspergillus, and hard-to-treat molds, including Fusarium and Scedosporium In this study, we tested APX001A and comparators against 1,706 contemporary clinical fungal isolates collected in 2017 from 68 medical centers in North America (37.3%), Europe (43.4%), the Asia-Pacific region (12.7%), or Latin America (6.6%). Among the isolates tested, 78.5% were Candida spp., 3.9% were non-Candida yeasts, including 30 (1.8%) Cryptococcus neoformans var. grubii isolates, 14.7% were Aspergillus spp., and 2.9% were other molds. All isolates were tested by CLSI reference broth microdilution. APX001A (MIC50, 0.008 μg/ml; MIC90, 0.06 μg/ml) was the most active agent tested against Candida sp. isolates; corresponding anidulafungin, micafungin, and fluconazole MIC90 values were 16- to 64-fold higher. Similarly, APX001A (MIC50, 0.25 μg/ml; MIC90, 0.5 μg/ml) was ≥8-fold more active than anidulafungin, micafungin, and fluconazole against C. neoformans var. grubii Against Aspergillus spp., AXP001A (50% minimal effective concentration [MEC50], 0.015 μg/ml; MEC90, 0.03 μg/ml) was comparable in activity to anidulafungin and micafungin. Aspergillus isolates (>98%) exhibited a wild-type phenotype for the mold-active triazoles (itraconazole, posaconazole, and voriconazole). APX001A was highly active against uncommon species of Candida, non-Candida yeasts, and rare molds, including 11 isolates of Scedosporium spp. (MEC values, 0.015 to 0.06 μg/ml). APX001A demonstrated potent in vitro activity against recent fungal isolates, including echinocandin- and fluconazole-resistant strains. The extended spectrum of APX001A was also notable for its potency against many less common but antifungal-resistant strains. Further studies are in progress to evaluate the clinical utility of the methyl phosphate prodrug, APX001, in difficult-to-treat resistant fungal infections.
Insights
APX001A (manogepix) shows potent in vitro activity against a broad spectrum of fungal pathogens, including resistant strains. This novel antifungal agent demonstrates significant promise for treating difficult-to-treat invasive fungal infections.
Area of Science:
- Mycology
- Infectious Diseases
- Pharmacology
Background:
- Invasive fungal infections (IFIs) pose a significant threat, often caused by pathogens with emerging resistance to current antifungals.
- Breakthrough infections increasingly involve less common yeasts and molds, necessitating new therapeutic options.
Purpose of the Study:
- To evaluate the in vitro activity of APX001A (manogepix), a novel Gwt1 inhibitor, against a large, contemporary collection of clinical fungal isolates.
- To compare the efficacy of APX001A with existing antifungal agents against various Candida species, Cryptococcus neoformans, Aspergillus species, and other molds.
Main Methods:
- A total of 1,706 clinical fungal isolates collected in 2017 from global medical centers were tested.
- Broth microdilution method following CLSI guidelines was employed to determine minimum inhibitory concentrations (MICs) and minimum effective concentrations (MECs).
Main Results:
- APX001A exhibited potent activity against Candida spp. (MIC50, 0.008 μg/ml; MIC90, 0.06 μg/ml), significantly exceeding that of anidulafungin, micafungin, and fluconazole.
- The agent was also highly active against Cryptococcus neoformans var. grubii and Aspergillus spp. (MEC50, 0.015 μg/ml; MEC90, 0.03 μg/ml).
- APX001A demonstrated potent activity against uncommon yeasts and molds, including antifungal-resistant strains.
Conclusions:
- APX001A possesses broad-spectrum in vitro activity against a wide range of contemporary clinical fungal isolates, including those resistant to established therapies.
- Its potent activity against major and uncommon fungal pathogens suggests potential as a valuable agent for treating challenging IFIs.
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